2016
Post-GWAS Prioritization Through Data Integration Provides Novel Insights on Chronic Obstructive Pulmonary Disease
Lu Q, Jin C, Sun J, Bowler R, Kechris K, Kaminski N, Zhao H. Post-GWAS Prioritization Through Data Integration Provides Novel Insights on Chronic Obstructive Pulmonary Disease. Statistics In Biosciences 2016, 9: 605-621. PMID: 27812370, PMCID: PMC5087812, DOI: 10.1007/s12561-016-9151-2.Peer-Reviewed Original ResearchGenome-wide association studiesFunctional annotationGenome-wide significance thresholdNovel insightsComplex human diseasesGWAS summary statisticsPotential risk locusComplex disease studiesEpigenomic annotationsGWAS signalsCOPD geneticsEnrichment analysisRisk lociIntegrative analysisAssociation studiesHuman diseasesGenetic contributionSignal prioritizationSignificance thresholdAnnotationUnprecedented opportunityBiological findingsData integrationLociSummary statistics
2010
Functional Genomics of Chlorine-induced Acute Lung Injury in Mice
Leikauf GD, Pope-Varsalona H, Concel VJ, Liu P, Bein K, Brant KA, Dopico RA, Di YP, Jang AS, Dietsch M, Medvedovic M, Li Q, Vuga LJ, Kaminski N, You M, Prows DR. Functional Genomics of Chlorine-induced Acute Lung Injury in Mice. Annals Of The American Thoracic Society 2010, 7: 294-296. PMID: 20601635, PMCID: PMC3136967, DOI: 10.1513/pats.201001-005sm.Peer-Reviewed Original ResearchConceptsAcute lung injuryChlorine-induced acute lung injuryLung injuryMouse strainsMean survival timeGene-targeted miceSusceptibility candidate genesSupportive measuresSurvival timeDivergent strainsInjuryCandidate genesCritical candidate genesFunctional genomics approachMiceAdditional genetic analysesMolecular eventsFunctional significanceFunctional genomicsGenomic approachesChlorine exposureGenetic basisNovel insightsGenetic analysisHospitalization